[Objective] The aim of this study is to provide basis for developing genetic engineering vaccine and diagnostic kit for Theileria sergenti infection. [Objective] P23 gene of Theileria sergenti was amplified from its g...[Objective] The aim of this study is to provide basis for developing genetic engineering vaccine and diagnostic kit for Theileria sergenti infection. [Objective] P23 gene of Theileria sergenti was amplified from its genomic DNA by PCR amplification, and cloned into the pGEM-Easy vector; then the sequencing result was analyzed with bioinformatics methods. [Result] Whole length of the P23 gene from Theileria sergenti is 684 bp containing a 672 bp open reading frame. The deduced amino acid sequence (223 amino acid residues) contains a signal peptide of 19 amino acid residues and two fragments of transmembrane domains, with relative molecular weight of the 25.886 kD and with the pI of 9.22. The homology between the yielded sequence and Chitose of Theileria sergenti P23 gene(TS-Chitose type, D84446), Ikeda of Theileria sergenti P23 gene(TS-Ikeda type, D84447) reached 99% and 90%, respectively. The sequence has been accessed in GenBank(EU573168). [Conclusion] The protein encoded by the P23 gene has better stability and immunogenicity, thus can be used as the antigen candidate for preparing genetic engineering vaccine for Theileria sergenti.展开更多
[Objective] The aim was to study cloning and prokaryotic expression of P23 major surface protein gene of Theileria sergenti. [Method] A pair of specific primers was designed according to the sequence of P23 major surf...[Objective] The aim was to study cloning and prokaryotic expression of P23 major surface protein gene of Theileria sergenti. [Method] A pair of specific primers was designed according to the sequence of P23 major surface protein of T. sergenti (D84447).The P23 gene was amplified by PCR from genomic DNA of T. sergenti and cloned into pMD18-T vector to construct recombinant clonal vector pMD18-P23. Positive clones were identified by PCR screening and restriction digestion. A recombinant expression plasmid pGEX-4T-P23 was constructed by subcloning the cloned P23 gene into the linearized pGEX-4T-1 vector and transformed into E. coli BL21. After introduction by IPTG,the expressed fusion protein was identified by SDS-PAGE and Western-blotting. [Result] The cloned gene has a total length of 507 bp. Sequencing result showed that the nucleotide sequence of the cloned P23 gene shared 99.4% identity with that of P23 published in GenBank (D84447). The expressed fusion protein was 46 ku in molecular mass. Induction opportunity of zhours after culture inoculation was the best,the induction time of 6 h was the best,and induction temperature of 34 ℃ was the best as well,IPTG of 1 mmol/L had little effect on the expression. Western-blotting indicated that recombinant protein was recognized by specific antibody. [Conclusion] This study would lay a foundation for further research on the prevention and diagnose of T. sergenti.展开更多
文摘[Objective] The aim of this study is to provide basis for developing genetic engineering vaccine and diagnostic kit for Theileria sergenti infection. [Objective] P23 gene of Theileria sergenti was amplified from its genomic DNA by PCR amplification, and cloned into the pGEM-Easy vector; then the sequencing result was analyzed with bioinformatics methods. [Result] Whole length of the P23 gene from Theileria sergenti is 684 bp containing a 672 bp open reading frame. The deduced amino acid sequence (223 amino acid residues) contains a signal peptide of 19 amino acid residues and two fragments of transmembrane domains, with relative molecular weight of the 25.886 kD and with the pI of 9.22. The homology between the yielded sequence and Chitose of Theileria sergenti P23 gene(TS-Chitose type, D84446), Ikeda of Theileria sergenti P23 gene(TS-Ikeda type, D84447) reached 99% and 90%, respectively. The sequence has been accessed in GenBank(EU573168). [Conclusion] The protein encoded by the P23 gene has better stability and immunogenicity, thus can be used as the antigen candidate for preparing genetic engineering vaccine for Theileria sergenti.
基金Supported by Science and Technology Development Program of Jilin Province (20050703-4)~~
文摘[Objective] The aim was to study cloning and prokaryotic expression of P23 major surface protein gene of Theileria sergenti. [Method] A pair of specific primers was designed according to the sequence of P23 major surface protein of T. sergenti (D84447).The P23 gene was amplified by PCR from genomic DNA of T. sergenti and cloned into pMD18-T vector to construct recombinant clonal vector pMD18-P23. Positive clones were identified by PCR screening and restriction digestion. A recombinant expression plasmid pGEX-4T-P23 was constructed by subcloning the cloned P23 gene into the linearized pGEX-4T-1 vector and transformed into E. coli BL21. After introduction by IPTG,the expressed fusion protein was identified by SDS-PAGE and Western-blotting. [Result] The cloned gene has a total length of 507 bp. Sequencing result showed that the nucleotide sequence of the cloned P23 gene shared 99.4% identity with that of P23 published in GenBank (D84447). The expressed fusion protein was 46 ku in molecular mass. Induction opportunity of zhours after culture inoculation was the best,the induction time of 6 h was the best,and induction temperature of 34 ℃ was the best as well,IPTG of 1 mmol/L had little effect on the expression. Western-blotting indicated that recombinant protein was recognized by specific antibody. [Conclusion] This study would lay a foundation for further research on the prevention and diagnose of T. sergenti.